Afag SIGA B.7/65.1 V6 Operating And Installation Instructions

Frequency controller

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Frequency Controller
SIGA (V6)
Translation of operating and installation instructions
Copyright by Afag GmbH

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Summary of Contents for Afag SIGA B.7/65.1 V6

  • Page 1 Frequency Controller SIGA (V6) Translation of operating and installation instructions Copyright by Afag GmbH...
  • Page 2 This operation instruction applies to: Bestellnummer Frequency Controller SIGA (V6) 230 VAC ; 50 Hz / 60 Hz 50195031 Frequency Controller SIGA (V6) 115 VAC ; 50 Hz / 60 Hz on demand Version of Documentation: BA_SIGA_V6_R02.1_EN.docx Release: R02.1 Date: 07/01/2021 Page 2 07/01/2021...
  • Page 3: Table Of Contents

    Table of contents: Safety instructions .................... 5 Notes on symbols and instructions ......................5 Basic safety information ........................6 Specified use ............................6 Description of the device .................. 7 General ..............................7 Technical Data ............................9 Assembly instructions ..................10 Installing the unit ..........................
  • Page 4 Replace the fuse ........................... 26 Troubleshooting ........................... 26 Address for orders ..................27 Disposal ......................27 Page 4 07/01/2021 R02.1...
  • Page 5: Safety Instructions

    1 Safety instructions Notes on symbols and instructions Symbols: Assembly and commissioning must be carried out by qualified per- sonnel only and according to these operating instructions. Please observe the meaning of the following symbols and notes. They are grouped into risk levels and classified according to ISO 3864-2.
  • Page 6: Basic Safety Information

    Basic safety information This description contains the necessary information for the correct application of the product described below. It is intended for use by technically qualified personnel. Qualified personnel are persons who, because of their training, experience and posi- tion as well as their knowledge of appropriate standards, regulations, health and safety requirements and working conditions, are authorised to be responsible for the safety of the equipment, at all times, whilst carrying out their normal duties and are therefore aware of, and can report, possible hazards (Definition of qualified employ-...
  • Page 7: Description Of The Device

    2 Description of the device General The electronic frequency control device SIGA is used to realize a continuous control of inductive loads like spiral conveyor, linear conveyor and hopper. The control device works according to the pulse-width modulation (PWM) within the half waves, the period can be adjusted between 20Hz and 99 Hz.
  • Page 8 CAUTION In the case of applications that require the oscillation conveyor to be switched ON and OFF constantly (e.g. dust switching, hopper control system, etc.), the prescribed controller input must be used. If the load circuit is disconnected with a switch or a relay the controller may be damaged.
  • Page 9: Technical Data

    Technical Data Figure 1: SIGA membrane keyboard flange type socket socket M12 x 1 control input M12x1,5-blind plug power supply M12x1,5-blind plug Lochabstand 87mm Lochdurchmesser 4 x 5mm für Schraube M4 WERT VALUE MENÜ MENUE Prog. EBENE LEVEL Table 1: Technical Data Type Unit SIGA B.7/65.1 (V6)
  • Page 10: Assembly Instructions

    3 Assembly instructions Installing the unit There are four holes on the underside for mounting the controller. The holes are sep- arated from the interior of the housing. Unscrew the cover fastening screws. Remove the cover. Insert the fastening screws into the channels and use them to attach the con- troller to a vibration-free base.
  • Page 11 Figure 2: Connection possibilities load board control board programming pins without function SI = 6,3AF SI = 6,3AF 7 8 9 MN ML power supply load connection external external external control input for external potentio- voltage- current- sensor NC-NO meter source source load-...
  • Page 12: How To Carry Out The Adjustment

    How to carry out the adjustment At the oscillating conveying unit you will have to determine the mechanical resonant frequency using the SIGA. For this purpose the oscillating convey-or will only be loaded with a test part. Then you use SIGA to slowly run the drive frequency. When there is a mechanical resonance the test part is at its maximum velocity.
  • Page 13: Operating Instructions

    4 Operating instructions Before switching on, check that the controller has been correctly connected to the oscillation conveyor. Switch the frequency controller on with a mains switch. If required, set the setpoint value until the vibration conveyor achieves the re- quired output.
  • Page 14: Addendum

    4.2.1 Addendum Table 3: Addendum Symbol Meaning button to program, i.e. to change the value of a parameter the sys- tem must be changed into programming mode. By pushing this button one time, the system is prompted to allow changes. Some areas of the parameters are protected with a CODE and require further input.
  • Page 15: Display And Optimal Behavior

    Display and optimal behavior All points of the 6-part Display are defined for a special function. Tabelle 4: Display und Bedienverhalten Stelle Display Bedienverhalten The first place shows the level (attached parameterblock to physical in- and out- puts) where the parameters are configur- ated.
  • Page 16: Parameter Level 0 (Rolling Progression Of The Parameters)

    Parameter Level 0 (rolling progression of the parameters) Table 6: Parameter Level 0 Parameter Display Erklärung A parameter defines the amplitude (out- put voltage) as a percentage. The ampli- tude moves in their value between 10 and 99 in 1s increments. 10 is the minimal set output voltage.
  • Page 17: Parameter Level 6 (Rolling Progression Of The Parameters)

    Parameter F0 defines the mode in which the vibratory drive to work. The value can be set to G and H. G is full-wave mode (electric oscillation - flow above and be- low the zero line) H half-wave operation means (electric oscillation - Power on on- ly one side of the zero line, the other side will be hidden) Parameter d defines the mode in which...
  • Page 18: Parameter Level B (Rolling Progression Of The Parameters)

    Parameter Level b (rolling progression of the parameters) Table 8: Parameter Level b Parameter Display Meaning Parameter F1 defines a logical element having a valence of S or O. The present at the input logic signal (logic LO when the swing drive is running, logical HI when the vibratory drive is) is processed according to the set value as follows (that signal is inverted or not inverted):...
  • Page 19: Parameter Level 0 (Rolling Progression Of The Parameters)

    not inverted passes after a set time the logic level at LO logic control, if the logic level does not change again at the en- trance. For each logic change times are restarted. Tightening delay is programmed as if F1 is set O Drop delay is programmed as if F1 is set S Parameter Level 0 (rolling progression of the parameters)
  • Page 20: Truth Table

    Truth Table Table 10: Example: Truth table for AND – connection and F1 = 0 for E6 and Eb Input E6 Input Eb Output A0 runs runs runs Table 11: Example: Truth table for AND – Connection and F1 = S for E6 and Eb (F1 inverted the Input Signals) Input E6 Input Eb...
  • Page 21: Statusdisplay - Input And Output

    Statusdisplay – Input and Output (Just in display mode 1. Parameter – Dot in the second LED is off / Signal level are inverted as soon as F1 is programmed as S) Feeder runs. Feeder off. There is no signal at the sensor input. Signal level LO is further processed.
  • Page 22: Options

    5 Options Options for Instrument Settings Table 16: Options for Instrument Settings Parameter Area / Values Factory Setting Feeder Oscillation amplitude 10 – 99% (Feeder capability) 20.0 – 99.9 Hz Swingfrequency 50.0 Hz 0.1 – 2.9 Sek. Acceleration ramp soft start (SA) 2.9 Sek.
  • Page 23: Frequency Setting

    After 20 seconds without pressing a button, the programming mode is exited and the origin is displayed without a point. Frequency Setting Origin Display. Push the button. Parameter Frequency programmed at 50.0 Hz is dis- played. Push the button. Code input is expected. Push the button.
  • Page 24: Setpoint

    Setpoint Origin display Push the button Parameter Frequency programmed at 50.0 Hz is dis- played. Push the button Push the button Code input is expected. Push the button Push the button Push the button Push the button Dot appears in second LED. Programm mode is active. The value can be changed by the value keys.
  • Page 25: Inverting The Control Signal (Herein Input E6)

    Inverting the control signal (herein input E6) Origin display. Push the button. Push the button. Code input is expected Push the button. Push the button. Push the button. Push the button. Dot appears in second LED. Program mode is active. The value can be changed by the value keys.
  • Page 26: Remaining Parameters

    Remaining Parameters All other parameters are available to be programmed in the same way: Approaching the parameter point Activate programming mode CODE Change the value Save 6 Maintenance Instructions Replace the fuse Procedure: 1. Always disconnect the mains plug before opening the control unit. 2.
  • Page 27 7 Address for orders Germany: Switzerland: Afag GmbH Afag Automation AG Wernher-von-Braun-Straße 1 Luzernstrasse 32 D – 92224 Amberg CH – 6144 Zell Tel.: ++49 (0) 96 21 / 65 0 27-0 Tel.: ++41 (0) 62 / 959 86 86...

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